0B FIZ Connector 2026: CBTG0BG-SMSM07-D52B and CBZG0BG-SFSM07-0000 Wireless Lens Control Connectors for Russian Client

Pain point: Professional cinema crews rely on wireless lens control systems (FIZ) to drive focus, iris, and zoom motors — and a single unreliable connector can interrupt encoder feedback or power mid-take, forcing a costly retake.
Core answer: Spring Technology supplied the 0B FIZ connector pair CBTG0BG-SMSM07-D52B straight plug and CBZG0BG-SFSM07-0000 panel-mount socket for a Russian client’s wireless lens control systems, with 7 pins carrying power, ground, encoder feedback data, and control lines simultaneously in one compact push-pull interface.

1. Custom Connector Solution Overview

This order adapts the miniature 0B series push-pull platform to professional cinema and broadcast lens control equipment for a Russian client.

  • Customer: Russian client (professional cinema equipment integrator)
  • Product 1: CBTG0BG-SMSM07-D52B — 0B straight plug (cable side)
  • Product 2: CBZG0BG-SFSM07-0000 — 0B panel-mount fixed socket (motor/receiver side)
  • Application: Wireless lens control systems (FIZ) connecting wireless receivers to wireless follow-focus motors
  • Benefit: 7 pins simultaneously carry power, ground, encoder feedback data, and control lines in a single quick-disconnect connector
ModelTypePositionsContact SizeConductor AWGWorking VoltageRated CurrentContact Resistance
CBTG0BG-SMSM07-D52B0B straight plug, solder termination70.5 mm28~30750 V2.5 A≤15.0 mΩ
CBZG0BG-SFSM07-00000B panel-mount fixed socket, nut fixing70.5 mm28~30750 V2.5 A≤15.0 mΩ

Both connectors share the push-pull self-latching mechanism, brass chrome-plated shells, and gold-plated contacts that keep lens control signals stable on professional cinema equipment such as ARRI, RED, Tilta, and Preston.

2. 0B FIZ Connector Design Highlights

Spring Technology engineered this 0B FIZ connector set around the specific electrical and mechanical demands of wireless lens control.

  • 7-pin combined power and data: The seven-pin configuration carries power, ground, encoder feedback data, and control lines simultaneously — exactly what wireless follow-focus motors require from the receiver side.
  • Gold-plated contacts: Brass contacts with gold mating finish and PPS insulator deliver low, stable contact resistance (≤15.0 mΩ) for clean encoder feedback.
  • Push-pull self-latching: Quick insertion and positive retention prevent accidental disconnection during handheld or gimbal-mounted shooting, while a straight pull releases the cable instantly for lens changes.
  • Compact 0B footprint: The miniature shell fits the tight geometry of motor housings and camera rigs without adding bulk.
  • Durable mechanics: More than 5000 mating cycles, vibration 10-20000 Hz at 15g, mechanical shock 100g·6ms, and salt spray corrosion resistance exceeding 48 hours.
  • Wide temperature range: -45°C to +125°C operation with humidity resistance up to 95% at 60°C, covering outdoor and studio environments.

The result is a lens control interconnect that behaves like an OEM component on set: predictable, repeatable, and ready to deploy into the Russian client’s FIZ systems.

3. 0B Series Connector Family Overview

The 0B series is the miniature member of Spring Technology‘s circular push-pull connector family, designed for applications where space is tight but reliability is not negotiable.

3.1 Available 0B Configurations

  • TGG.0B Straight Plug: Standard cable-mounted plug — the platform used by CBTG0BG-SMSM07-D52B.
  • ZGG.0B Fixed Socket: Panel-mounted socket for chassis integration — the platform used by CBZG0BG-SFSM07-0000.
  • MGG.0B / MHG.0B / MEG.0B Fixed Socket (IP68): Watertight panel sockets for harsh or washdown environments.
  • THG.0B Elbow Plug: Right-angle plug for low-profile routing on camera rigs.
  • ZPG.0B / ZXG.0B Elbow Socket (for PCB): Right-angle PCB sockets for board-level integration.

Beyond these variants, the same 0BG custom model family has served 0B precision sensor connectors for Russian clients and 0B sensor cable assemblies, while 0B 7-pin connectors have shipped to Singapore and 0B plugs and receptacles serve broadcast studio equipment in Israel.

3.2 Customization Services

  • Cable Assembly: Custom cable length, connector configuration, and overmolding to match your exact routing and environmental requirements.
  • Custom Inserts: Specific pin arrangements and mixed contact configurations for combined power, data, and control needs.
  • Special Materials: Shell materials, plating options, and custom colors for brand or application matching.

4. Applications: Wireless Lens Control (FIZ) and Cinema Equipment

Wireless lens control systems — commonly called FIZ (Focus/Iris/Zoom) — let a single assistant or operator control lens functions remotely, which demands connectors that carry mixed power and data without signal degradation.

4.1 Wireless Follow-Focus Systems

  • Wireless receivers to wireless follow-focus motors
  • Encoder feedback loops for repeatable focus, iris, and zoom moves
  • Handheld, gimbal, and Steadicam configurations

4.2 Professional Cinema Equipment

  • Camera systems from ARRI, RED, Tilta, and Preston ecosystems
  • Lens control accessories and motor mounts
  • On-set monitoring and control panels

4.3 Broadcast and Production Environments

  • Studio and location production gear
  • Portable lens control packs for documentary and live production

The global push-pull connector market is projected to reach USD 1.8 billion by 2027 (CAGR 5.8%), while Russia’s electronic components market is expected to grow to USD 8.2 billion by 2027 (CAGR 7.1%) — sustaining demand for precision push-pull connectors in broadcast, cinema, and lens control applications.

5. Common Questions (FAQ)

Q1: Why does a wireless lens control (FIZ) system need 7 pins?

Wireless lens control systems must simultaneously deliver power to the follow-focus motor, return ground, carry encoder feedback data, and pass control lines — four distinct electrical functions. A 7-pin configuration covers this mixed requirement in a single connector, avoiding fragile multi-cable harnesses on camera rigs.

Q2: Can this 0B FIZ connector work with ARRI, RED, Tilta, and Preston equipment?

Yes. The connector is designed for the mixed power-and-data signaling used by professional cinema ecosystems such as ARRI, RED, Tilta, and Preston. For specific pin-out and interchangeability requirements, contact our engineering team at [email protected] with your application details.

Q3: Is the 0B series compatible with other brands’ connectors?

The 0B series connector offers excellent compatibility with many leading supplier systems. For specific interchangeability requirements, please contact our engineering team at [email protected] with your application details.

Q4: Is the 0B FIZ connector reliable in handheld and outdoor shooting?

Yes. With more than 5000 mating cycles, vibration resistance from 10 to 20000 Hz at 15g, mechanical shock rating of 100g·6ms, and an operating range of -45°C to +125°C, the connector holds power and encoder feedback stable through handheld, gimbal, and outdoor location work.

Q5: What is the typical lead time for 0B series orders?

Standard orders typically ship within 20 working days. Larger quantities (500+ pcs) may require up to 40 working days. Rush orders and express shipping options are available — contact our sales team for confirmation.

Conclusion & Call to Action

This 0B FIZ connector delivery for the Russian client shows how Spring Technology turns the miniature 0B series platform into a complete wireless lens control interface — from the CBTG0BG-SMSM07-D52B straight plug to the CBZG0BG-SFSM07-0000 panel-mount socket, every detail was aligned with the customer’s power, ground, encoder feedback, and control line requirements. Spring Technology also provides professional customization services for both push-pull connectors and cable assemblies, offering tailored solutions to meet your specific technical requirements.

For more information about our 0B series connectors or to discuss your requirements, contact us at [email protected] or [email protected], or visit our website.

Building a wireless lens control system? Send us your pin configuration, cable length, and motor housing requirements — our engineering team will respond with a tailored connector proposal within 24 hours.

Further Reading

Explore more technical resources from Spring Technology:

0B FIZ Connector 2026 CBTG0BG-SMSM07-D52B and CBZG0BG-SFSM07-0000 Wireless Lens Control Connectors

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